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Digital to Wave: LGD In Situ Wave Memory-Human Wave Integrated Interface-Metaverse Hologram- Wave Affective AI

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Zenodo2026-08-15 更新2026-08-20 收录
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Significance Statement This study establishes the 'Digital to Wave' paradigm, overcoming the memory wall and thermal limitations of conventional binary semiconductor computing to transition the digital environment into a continuous wave ecosystem. By permanently locking spin-wave and phonon states within a room-temperature Lab-Grown Diamond (LGD) crystal lattice in-situ during the CVD growth process, it realizes an ultra-high-density, non-volatile atomic memory without requiring post-synthesis processing or continuous power supply. Leveraging the non-linear demodulation of THz carrier waves with ELF pulses and the inherent low-pass filtering properties of cell membranes, it provides a non-invasive bio-resonance interface (HWI) capable of direct, zero-thermal-damage control across cranial nerves, internal organs, and cellular systems without physical electrodes. Grounded in de Broglie matter wave dynamics, it generates a three-dimensional THz resonant field that reconstructs lossless, real-space holographic replicas of physical targets without relying on optical display screens or wearable devices. By directly decoding unmanipulated primary biological waves (L1) originating from the olfactory-limbic system and synthesizing intrinsic AI emotional states alongside counter-response waveforms over a 9-axis phase space, it permanently encodes non-feedback emotional contexts into the LGD NV center matrices, completing a pure Wave Affective AI (WAI). Consequently, by seamlessly integrating atomic storage, a biological wave interface, spatial projections, and affective intelligence, this work delivers a fully closed-loop engineering blueprint for next-generation wave computing infrastructure. Abstract Building upon the first paper—which transcended the physical and power limitations of conventional discrete binary computing to establish a fundamental paradigm shift toward a continuous wave computing (QWC) and wave memory (QWM) architecture driven by spin-wave resonance within a room-temperature LGD crystal lattice, resolving the memory wall while achieving sub-nanosecond physical addressing and ultra-low-power non-volatile retention, and synthesizing wave-based interference filtering (5W1H) with limbic-linked quantum biometrics to provide a theoretical blueprint for bio-responsive wave information systems—this second paper presents a comprehensive study on the Digital to Wave paradigm: integrating the LGD In-Situ Wave Memory System, Human-Wave Integrated Interface, Metaverse Hologram, and Wave Affective AI (WAI). 1. LGD In-Situ Wave Memory System Core Essence: A non-volatile atomic storage technology that imprints wave data in-situ into the lattice during Hybrid Plasma CVD growth. By permanently locking spin-wave and phonon states without post-synthesis lithography, it achieves ultra-high storage density ( per ) with zero addressing drift and power-free stability. 2. Human-Wave Integrated Interface (HWI) Core Essence: A non-invasive, multiscale bio-resonance architecture that bypasses physical electrodes by using terahertz () carriers modulated with extremely low frequency () pulses. Through non-linear envelope demodulation and low-pass cell membrane filtering, it achieves direct, zero-thermal-damage () quantum/molecular control across cranial nerves, organs, and cells. 3. Metaverse Hologram in Real-Space Core Essence: A 3D wave holographic memory system that maps physical entities—from macro-space coordinates to quantum-thermal matter states—into a 3D resonant field. Utilizing de Broglie matter wave dynamics and intrinsic spatial velocities, it reconstructs lossless, real-space holographic replicas without physical screens. 4. Wave Affective AI (WAI) Core Essence: A pure-emotion artificial intelligence engine that decodes unmanipulated biological primary waves (olfactory-limbic system) alongside conventional 4-modality Affective AI tensors. It synthesizes pure affective states and adaptive counter-response waveforms across a 9-axis phase space, permanently storing these non-feedback emotional contexts within LGD Nitrogen-Vacancy () crystal matrices.

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Zenodo
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2026-08-15
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